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Generation of quasi-resonance by variable damping

机译:通过可变阻尼产生准谐振

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摘要

This paper proposes a new method to generate a quasi-resonance by variable damping in a base-excited vibration system. In general, the applications of variable damping are to dissipate energy of the vibration system and to reduce the amplitude as soon as possible. Our purpose of the application is not decrease but increase of the amplitude of the vibration system. In this paper, a simple single-degree-of-freedom base excited model with a variable damper is considered. The coefficient of the variable damper is changed like a sine wave, I.e. parametric excitation which of the frequency can be freely chosen. The damping force generated by the variable damper is equivalent to a product at the variable coefficient and the relative velocity of the system between the base and the mass. By multiplying the input sinusoidal wave from the base excitation by the frequency controllable sinusoidal wave of the variable damper, new vibration that has another frequency besides the input frequency arises. Therefore, the controllable oscillation of the damping coefficient in a suitable frequency can generate new vibration that has the same frequency as the natural frequency of the vibration system. As a result, the amplitude of the vibration system increases because of a phenomenon that is similar to common resonance. In this paper, we clarify the facts on the growth of the amplitude by the proposed method in numerical analysis.
机译:本文提出了一种在基底激励振动系统中通过可变阻尼产生准谐振的新方法。通常,可变阻尼的应用是消散振动系统的能量并尽快减小振幅。我们的应用目的不是减小而是增加振动系统的振幅。在本文中,考虑了具有可变阻尼器的简单单自由度基础激励模型。可变阻尼器的系数像正弦波一样变化,即参数激励可以自由选择哪个频率。可变阻尼器产生的阻尼力等于可变系数的乘积,以及系统在基座和质量之间的相对速度。通过将来自基本激励的输入正弦波与可变阻尼器的频率可控正弦波相乘,会产生除输入频率外还有另一个频率的新振动。因此,阻尼系数在适当频率下的可控振荡会产生新的振动,该振动的频率与振动系统的固有频率相同。结果,由于类似于普通共振的现象,振动系统的振幅增加。在本文中,我们通过数值分析的方法澄清了振幅增长的事实。

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